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  • Author: Henne WM
  • References

Author: Henne WM


References 20 references


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  • Henne WM (2024) Molecular determinants of lipid droplet subpopulations and their fates. FEBS Lett 598(10):1199-1204 PMID:38664338
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  • Speer NO, et al. (2024) Tld1 is a regulator of triglyceride lipolysis that demarcates a lipid droplet subpopulation. J Cell Biol 223(1) PMID:37889293
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  • Girik V, et al. (2022) Vacuole-Specific Lipid Release for Tracking Intracellular Lipid Metabolism and Transport in Saccharomyces cerevisiae. ACS Chem Biol 17(6):1485-1494 PMID:35667650
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  • Gok MO, et al. (2022) ER-localized phosphatidylethanolamine synthase plays a conserved role in lipid droplet formation. Mol Biol Cell 33(1):ar11 PMID:34818062
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  • Henne WM (2022) Roles for inter-organelle contacts in organizing metabolism. FASEB J 36 Suppl 1.
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  • Henne WM (2021) How the vacuole ESCRTs its own proteins to their final destination. J Cell Biol 220(8) PMID:34279549
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  • Rogers S and Henne WM (2021) Analysis of Neutral Lipid Synthesis in Saccharomyces cerevisiae by Metabolic Labeling and Thin Layer Chromatography. J Vis Exp PMID:33616103
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  • Rogers S, et al. (2021) Glucose restriction drives spatial reorganization of mevalonate metabolism. Elife 10 PMID:33825684
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  • Wood NE, et al. (2020) Nutrient Signaling, Stress Response, and Inter-organelle Communication Are Non-canonical Determinants of Cell Fate. Cell Rep 33(9):108446 PMID:33264609
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  • Hariri H, et al. (2019) Mdm1 maintains endoplasmic reticulum homeostasis by spatially regulating lipid droplet biogenesis. J Cell Biol 218(4):1319-1334 PMID:30808705
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  • Bryant D, et al. (2018) SNX14 mutations affect endoplasmic reticulum-associated neutral lipid metabolism in autosomal recessive spinocerebellar ataxia 20. Hum Mol Genet 27(11):1927-1940 PMID:29635513
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  • Hariri H, et al. (2018) Lipid droplet biogenesis is spatially coordinated at ER-vacuole contacts under nutritional stress. EMBO Rep 19(1):57-72 PMID:29146766
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  • Henne WM and Hariri H (2018) Endoplasmic Reticulum-Vacuole Contact Sites "Bloom" With Stress-Induced Lipid Droplets. Contact (Thousand Oaks) 1 PMID:30112463
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  • Hariri H, et al. (2016) Inter-organelle ER-endolysosomal contact sites in metabolism and disease across evolution. Commun Integr Biol 9(3):e1156278 PMID:27489577
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  • Tang S, et al. (2016) ESCRT-III activation by parallel action of ESCRT-I/II and ESCRT-0/Bro1 during MVB biogenesis. Elife 5 PMID:27074665
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  • Henne WM, et al. (2015) Mdm1/Snx13 is a novel ER-endolysosomal interorganelle tethering protein. J Cell Biol 210(4):541-51 PMID:26283797
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  • Tang S, et al. (2015) Structural basis for activation, assembly and membrane binding of ESCRT-III Snf7 filaments. Elife 4 PMID:26670543
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  • Buchkovich NJ, et al. (2013) Essential N-terminal insertion motif anchors the ESCRT-III filament during MVB vesicle formation. Dev Cell 27(2):201-214 PMID:24139821
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  • Henne WM, et al. (2012) The endosomal sorting complex ESCRT-II mediates the assembly and architecture of ESCRT-III helices. Cell 151(2):356-71 PMID:23063125
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  • Youn JY, et al. (2010) Dissecting BAR domain function in the yeast Amphiphysins Rvs161 and Rvs167 during endocytosis. Mol Biol Cell 21(17):3054-69 PMID:20610658
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